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Probabilistic Assessment of Reinforcing Steel Depassivation in Concrete under Aggressive Chloride Environments Based on Natural Exposure Data 被引量:3

Probabilistic Assessment of Reinforcing Steel Depassivation in Concrete under Aggressive Chloride Environments Based on Natural Exposure Data
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摘要 The probability distributions of the critical threshold chloride concentration Ccr, the chloride diffusion coefficient D, and the surface chloride concentration Cs are determined based on the collected natural exposure data, and the probability estimation of reinforcement depassivation in concrete is presented using Monte-Carlo simulation. From sensitivity analysis of mean value for ccr, cs, and D on the depassivation probability of reinforcement, it is found that ccr, cs, and D respectively has the greatest, smaller, and the lowest effect on the probability of depassivation. Finally the effect of stress state of concrete on the reinforcement depassivation probability is analyzed. It is found that the influence of stress state becomes apparent as exposure time increases. The probability distributions of the critical threshold chloride concentration Ccr, the chloride diffusion coefficient D, and the surface chloride concentration Cs are determined based on the collected natural exposure data, and the probability estimation of reinforcement depassivation in concrete is presented using Monte-Carlo simulation. From sensitivity analysis of mean value for ccr, cs, and D on the depassivation probability of reinforcement, it is found that ccr, cs, and D respectively has the greatest, smaller, and the lowest effect on the probability of depassivation. Finally the effect of stress state of concrete on the reinforcement depassivation probability is analyzed. It is found that the influence of stress state becomes apparent as exposure time increases.
作者 张小刚
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2011年第1期126-131,共6页 武汉理工大学学报(材料科学英文版)
基金 Funded by National Natural Science Foundation of China (Nos.50908148and 50925829) Research Project of Ministry of Housing and Urban-Rural Development of China (Nos.2009-K4-23, 2010-11-33) National KeyTechnologies R&D Program of China (No.2006BAJ02B04)
关键词 probability of reinforcement depassivation natural exposure data stress state chloride diffusion coefficient critical threshold chloride concentration surface chloride concentration probability of reinforcement depassivation natural exposure data stress state chloride diffusion coefficient critical threshold chloride concentration surface chloride concentration
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  • 1陈拴发,王秉纲.高性能混凝土应力腐蚀评价指标[J].交通运输工程学报,2005,5(1):6-10. 被引量:23
  • 2吴海军,陈艾荣.桥梁结构耐久性设计方法研究[J].中国公路学报,2004,17(3):57-61. 被引量:54
  • 3陈拴发,王秉纲.高性能混凝土应力腐蚀影响因素显著性分析[J].长安大学学报(自然科学版),2005,25(5):1-5. 被引量:2
  • 4JTJ270-89.水运工程混凝土试验规程[S].[S].,..
  • 5MEHTA P K.Durability of Concrete-Fifty Years of Progress[C]//MALHORTA V M.Proceedings of the 2nd International Conference on Durability of Concrete.Farmington Hills:ACI,19 91:1-31.
  • 6ANDREA B,EVAN B,THOMAS M D A,et al.An Overview and Sensitivity Study of a Multi-mechanistic Chloride Transport Model[J].Cement and Concrete Research,1999,29(6):827-837.
  • 7KONIN A,FRANCOIS R,ARLIGUIE G.Analysis of Progressive Damage of Reinforced Ordinary and High Performance Concrete[J].Materials and Structures,1998,31(1):27-35.
  • 8KONIN A,FRANCOIS R,ARLIGUIE G.Penetration of Chlorides in Relation to the Micro-cracking State into Reinforced Ordinary and High Strength Concrete[J].Materials and Structures,1998,31(5):310-316.
  • 9COSTA A,APPLETON J.Chloride Penetration into Concrete in Marine Environment-Part Ⅰ:Main Parameters Affecting Chloride Penetration[J].Materials and Structures,1999,32(4):252-259.
  • 10MANGAT P S,MOLLOY B T.Prediction of Long Term Chloride Concentration in Concrete[J].Materials and Structures,1994,27(6):338-346.

共引文献51

同被引文献27

  • 1朱卫中,高玉滨,石明贤.一次冻结模式对防冻剂混凝土抗冻临界强度的影响[J].低温建筑技术,1993,16(2):36-38. 被引量:4
  • 2胡红梅.The Influence of Mineral Functional Materials on Chloride Ion Penetration of Concrete[J].Journal of Wuhan University of Technology(Materials Science),2005,20(1):106-110. 被引量:4
  • 3张平生,卢梅,李晓燕.锈损钢筋的力学性能[J].工业建筑,1995,25(9):41-44. 被引量:112
  • 4A|musallam A A. Effect of Corrosion on the Properties of Reinforcing Steel Bars[ J]. Construction and Building Materials, 2001, (5) :361.
  • 5Zhang Xiaogang, Zhao Yangang, Lu Zhaohui. Dynamic Corrosion- induced Cracking Process of RC Structures Considering the Influence of Initial Defects[ J]. Journal of Asian Architecture and Building Engineering, 2010,9 (2) :439 - 446.
  • 6Fang Congqi, Lundgren K, Plos M, et al. Bond Behaviour of Corroded Reinforcing Steel Bars in Concrete [ J ]. Cement and Concrete Research, 2006, 36:1931 -1938.
  • 7Wang Xiaohui, Liu Xila. Modeling Bond Strength of Corroded Reinforcement Without Stirrups [ J ]. Cement and Concrete Research, 2004, 34:1331 - 1339.
  • 8Lu Xinying.Application of the Nernst-Einstein equation to concrete[J].Cement and Concrete Research,1997,27(2):293-302.
  • 9Yang C C,Cho S W.The relationship between chloride migration rate for concrete and electrical current in steady state using the accelerated chloride migration test[J].Materials arid Structure,2004,37 (7):456-463.
  • 10Kumar M P.Durability of concrete-the zigzag course of progress[J].Indian Concrete Journal,2006,80(8):9-16.

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